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Theoretical Simulations on Electric Properties of CNT-Me and GNR-Me Interconnects Using Effective Media Approach

机译:使用有效介质方法的CNT-Me和GNR-Me互连电性能的理论模拟

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To overcome disadvantages of nowadays microtechnology, a further miniaturization of electronic devices, high integration level as well as increase of both operation frequencies and power density is required, including the use of adequate materials and innovative chip interconnects. Due to their unique physical properties, especially due to a ballistic (without losses) mechanism of conductivity, carbon nanotubes (CNTs) and graphene nanoribbons (GNRs) attract a permanently growing technological interest, for example, as promising candidates for nanointerconnects in a high-speed electronics.
机译:为了克服当今微技术的缺点,需要使电子设备进一步小型化,高集成度以及增加工作频率和功率密度,包括使用适当的材料和创新的芯片互连。由于其独特的物理特性,特别是由于导电性的弹道(无损耗)机制,碳纳米管(CNT)和石墨烯纳米带(GNR)引起了永久性的技术兴趣,例如,作为高密度纳米互连的有希望的候选者,速度电子产品。

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